Multivalency in the gas phase: H/D exchange reactions unravel the dynamic "rock 'n' roll" motion in dendrimer-dendrimer complexes

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Abstract

Noncovalent dendrimer-dendrimer complexes were successfully ionized by electrospray ionization of partly protonated amino-terminated polypropylene amine (POPAM) and POPAM dendrimers fully functionalized with benzo[21]crown-7 on all branches. Hydrogen/deuterium exchange (HDX) experiments conducted on dendrimer-dendrimer complexes in the high vacuum of a mass spectrometer give rise to a complete exchange of all labile NH hydrogen atoms. As crown ethers represent noncovalent protective groups against HDX reactions on the ammonium group to which they are coordinated, this result provides evidence for a very dynamic binding situation: each crown is mobile enough to move from one ammonium binding site to another. Schematically, one might compare this motion with two rock 'n' roll dancers that swirl around each other without completely losing all contact at any time. Although the multivalent attachment certainly increases the overall affinity, the "microdynamics" of individual site binding and dissociation remains fast. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Qi, Z., Schlaich, C., & Schalley, C. A. (2013). Multivalency in the gas phase: H/D exchange reactions unravel the dynamic “rock ‘n’ roll” motion in dendrimer-dendrimer complexes. Chemistry - A European Journal, 19(44), 14867–14875. https://doi.org/10.1002/chem.201301951

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